Cell
Volume 184, Issue 3, 4 February 2021, Pages 810-826.e23
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Spatiotemporal analysis of human intestinal development at single-cell resolution

https://doi.org/10.1016/j.cell.2020.12.016Get rights and content
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Highlights

  • Multimodal atlas of human intestinal development maps 101 cell types onto tissue

  • Charts developmental origins of diverse cellular compartments and their progenitors

  • Functional diversity of fibroblasts in stem cell, vasculature, and GALT formation

  • Resource applied to interrogate pathology of in utero intestinal diseases

Summary

Development of the human intestine is not well understood. Here, we link single-cell RNA sequencing and spatial transcriptomics to characterize intestinal morphogenesis through time. We identify 101 cell states including epithelial and mesenchymal progenitor populations and programs linked to key morphogenetic milestones. We describe principles of crypt-villus axis formation; neural, vascular, mesenchymal morphogenesis, and immune population of the developing gut. We identify the differentiation hierarchies of developing fibroblast and myofibroblast subtypes and describe diverse functions for these including as vascular niche cells. We pinpoint the origins of Peyer’s patches and gut-associated lymphoid tissue (GALT) and describe location-specific immune programs. We use our resource to present an unbiased analysis of morphogen gradients that direct sequential waves of cellular differentiation and define cells and locations linked to rare developmental intestinal disorders. We compile a publicly available online resource, spatio-temporal analysis resource of fetal intestinal development (STAR-FINDer), to facilitate further work.

Keywords

gene expression
intestinal development
human development
human developmental cell atlas
single-cell RNA-sequencing
spatial transcriptomics
mesenchymal cells
stem cells
intestinal crypt
congenital disease

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